
power generation
supporting de-fossilization, flexibility and scaleability
Modern dispatchable power generation is becoming a key component of future grid stability and security of supply.
Generiv Power design, construct, commission and supervise flexible fossil-ecofuel-power plants, Gas-H₂-ready power plants, waste-to-energy facilities, biogas plants and integrated infrastructure solutions designed for resilient, flexible and grid-ready energy systems. Take a look at our references to learn more.
Partner with Generiv Power to enhance flexible and profitable operation of power generation assets
Our approach supports dynamic ramping, multi-fuel operation and hybrid dispatch concepts through integration with complementary infrastructure such as biogas, H₂ and storage systems.

Flexibility & Scalability
Flexible solutions for evolving energy systems
We deliver solutions that improve the ability of power generation assets to dynamically adapt to changing market, grid and operational conditions — including fast ramp-up and ramp-down capabilities, flexible fuel utilization and coordinated operation with complementary assets.

Diversified
Fuels
Diversified fuels for smart energy systems
We deliver fuel-flexible and hybrid operating concepts that support the utilization and combination of different fuel sources and energy carriers to improve operational resilience, dispatch flexibility and long-term economic stability of power generation assets. It includes the supply chain for the designed fuels.

Capacity
Poolings
Capacity pooling for resilient energy systems
We deliver coordinated aggregation and operational concepts for generation, storage and flexible demand assets to provide dispatchable and system-supporting capacity within unified operational structures. This includes technologies such as gas/biogas & H₂ & WtE, storage systems.

Scenario-based Design
Designed for long-term investment viability
We deliver scenario-based evaluations and operational concepts across different technical, operational and fuel-related configurations to identify resilient, flexible and economically viable power generation solutions, including modelling of operational behaviour, fuel scenarios, etc.



